首页> 外文期刊>ORL: Journal for oto-rhino-laryngology and its borderlands >Electromotility in outer hair cells: a supporting role for fast potassium conductance.
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Electromotility in outer hair cells: a supporting role for fast potassium conductance.

机译:外毛细胞的电动力:快速钾电导的辅助作用。

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Motility of outer hair cells underlies the cochlear amplifier, which is critical for the ear's sensitivity and fine tuning. Of the two motile mechanisms present in these cells, electromotility at the lateral wall depends on the receptor potential and thus depends on currents through the cell body. We found that, in the guinea pig cochlea, basal turn outer hair cells have a fast-activating ion current (tau < 0.3 ms at 23 degrees C), which is absent in apical turn cells. This finding is consistent with our previous theoretical analysis that a fast-activating potassium current is required only in the basal turn to counteract the capacitive current and thereby to enhance the effectiveness of electromotility. Thus, our finding is consistent with the functional significance of electromotility. We conjecture therefore that the current reduces the capacitance of the outer hair cell in order to increase hearing bandwidth.
机译:外耳毛细胞的动力是耳蜗放大器的基础,这对于耳朵的灵敏度和微调至关重要。在这些细胞中存在的两种运动机制中,侧壁的电动性取决于受体电位,因此取决于通过细胞体的电流。我们发现,在豚鼠耳蜗中,基底转弯外毛细胞具有快速激活的离子电流(在23摄氏度时tau <0.3 ms),而在顶端转弯细胞中则不存在。这一发现与我们先前的理论分析一致,即仅在基础匝中需要快速激活的钾电流以抵消电容性电流,从而增强电动力的有效性。因此,我们的发现与电动性的功能意义一致。因此,我们推测电流会减小外毛细胞的电容,以增加听力带宽。

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